In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvothermal process and then sintered by spark plasma sintering to obtain bulk samples with controllable texture degrees. The sintered nanostructured Bi2Te3 pellets show texture-dependent thermoelectric properties, in which their Seebeck coefficient, electrical conductivity and thermal conductivity can be optimized by the proper texture design to simultaneously secure a high carrier mobility and strong phonon scattering, resulting in a peak ZT value of ~0.69 at 333 K. This study reveals the potential of texture engineering in developing high performance anisotropic thermoelectric materials.</p
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvot...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi 2Te 3 nanoplates and subsequent spark ...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvot...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
N-type Bi2Te3 nanostructures were synthesized using a solvothermal method and in turn sintered using...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi 2Te 3 nanoplates and subsequent spark ...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...